This application claims the priority benefit of Taiwan application serial no. 99138885, filed on Nov. 11, 2010. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The invention relates to a display apparatus, and more particularly, to a touch display apparatus.
2. Description of Related Art
However, such design may cause the visual effect provided by the capacitive touch panel 100 unsatisfactory. Specifically, when the light passes an interface between different materials, the physical effects such as refraction, reflection, transmission, and the like may be caused, wherein the physical effects are varied with the properties of the materials. In the capacitive touch panel 100, the light would pass through the first sensing electrode 122 and the inter-insulation layer at the position X, the light would pass through the second sensing electrode 132 and the inter-insulation layer at the position Y, and the light would only pass through the inter-insulation layer at the position Z (that is, where the space G is located). The sensing electrodes and the inter-insulation layer have different physical properties such as refractivity, etc. Therefore, uneven brightness is felt by human eyes when the capacitive touch panel 100 is watched. Particularly, the outline of the first sensing electrodes 122 and the second sensing electrodes 132 may be observed.
When the touch panel 100 is combined with a display panel, the worse display quality resulted from the signal interference between the display panel and the touch panel 100 may occur.
The invention is directed to a touch display apparatus, wherein an uneven visual effect can be prevented and the signal interference between a touch panel and a display panel is significantly eliminated.
The invention provides a touch display apparatus including a display panel, a touch panel, an insulation element, and a shielding electrode layer. The touch panel includes a substrate, a plurality of first sensing series and a plurality of second sensing series. The first sensing series are disposed on the display panel. The substrate is disposed on the display panel and the first sensing series are disposed on the substrate. Each of the first sensing series extends along a first direction and includes a plurality of first sensing electrodes. The second sensing series are disposed between the first sensing series and the display panel. Each of the second sensing series extends along a second direction to intersect with the first sensing series and includes a plurality of second sensing electrodes. Each of the first sensing electrodes is orthogonally projected on the display panel in a first area, each of the second sensing electrodes is orthogonally projected on the display panel in a second area, and the first area is separated from an adjacent second area in a distance. The insulation element is disposed between the second sensing series and the display panel. The shielding electrode layer is disposed between the insulation element and the display panel. The shielding electrode layer includes a plurality of shielding electrode stripes, wherein each of the shielding electrode stripes is orthogonally projected on the display in a third area with a width identical to the distance.
In view of the above, a patterned shielding electrode layer is disposed between the touch panel and the display panel according to the touch display apparatus of the invention. Therefore, when the patterned shielding electrode layer and the sensing electrodes of the touch panel are made of the same material, the disposition of the patterned shielding electrode layer is not only conducive to eliminate the problems such as the signal interference and the electrostatic discharge, but also conducive to provide an even visual effect.
In order to make the aforementioned and other features and advantages of the invention more comprehensible, embodiments accompanying figures are described in detail below.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
In the present embodiment, the touch panel 220 is, for example, a projected capacitive touch panel. Namely, the touch panel 200 at least includes a substrate 224, a plurality of first sensing series 222A respectively extended along a first direction D1 and a plurality of second sensing series 222B respectively extended along a second direction D2. The substrate 224 is disposed on the display panel 210, which is, for example, a cover plate, a glass, or a plastic substrate. The first sensing series 222A and the second sensing series 222B are disposed on the substrate 224. In addition, the cover plate comprises a decoration layer and a base substrate wherein the decoration layer is located at a side of base substrate adjacent to the display panel 210 or away from the display panel 210. The material of the decoration layer includes diamond-like carbon, ceramic, colored ink, resin, photo resist or the combination thereof.
Each of the first sensing series 222A includes a plurality of first sensing electrodes E1 and a plurality of first connecting lines C1 serially connecting the first sensing electrodes E1 in the first direction D1. Each of the second sensing series 222B includes a plurality of second sensing electrodes E2 and a plurality of second connecting lines C2 serially connecting the second sensing electrodes E2 in the second direction D2. The sensing electrodes may have a regular shape such as a diamond, a triangle or a line segment or may have an irregular shape. For accomplishing the capacitive touch sensing function, each of the first sensing electrodes E1 is configured to be separated from the adjacent second sensing electrodes E2. In addition, the first sensing series 222A and the second sensing series 222B are electrically independent from each other.
The shielding electrode layer 240 includes a plurality of shielding electrode stripes 242. The configuration of the shielding electrode layer 240 is conducive to prevent from the signal interference problem between the touch panel 220 and the display panel 210. In one embodiment, the shielding electrode layer 240 can be connected to a fixed voltage, a grounding voltage, or a high resistance to provide the signal-shielding effect. Certainly, the shielding electrode layer 240 can further provide the electrostatic discharge (ESD) protection effect. That is to say, an improper accumulation of electrostatic charges in the display panel 210 or the touch panel 220 can be eliminated by draining the electrostatic charges through the shielding electrode layer 240.
In addition, in the present embodiment, the material of the shielding electrode strips 242, the material of the first sensing electrodes E1, and the material of the second sensing electrodes E2 are the same, such as a transparent conductive material. Therefore, the pattern design of the shielding electrode layer 240 can further provide a specific optical compensation effect to prevent from the uneven visual effect resulted from the disposition of the touch panel 220.
As shown in
The display light emitted from the display panel 210 passes through one of the shielding electrode stripes 242 and then is received by human eyes at the position P. The display light emitted from the display panel 210 passes through one of the first sensing electrodes E1 and then is received by human eyes at the position Q while the display light emitted from the display panel 210 passes through one of the second sensing electrodes E2 and then is received by human eyes at the position R. Owing that the first sensing electrodes E1, the second sensing electrodes E2, and the shielding electrode stripes 242 are made of the same material, the optical effects such as refraction, reflection, and the like caused by the display light passing through the elements are substantially the same. Therefore, the touch display apparatus 200 can have much even visual effect. Particularly, when it is compared with the conventional design illustrated in
As a whole, the design of the shielding electrode layer 240 is conducive to mitigate the issues such as the signal interference and the ESD in the touch display apparatus 200 and improve the display quality of the touch display apparatus 200. It should be noted that the shielding electrode stripes 242 in the present embodiment constitute a shielding electrode net. Nevertheless, the patterns of the shielding electrode layer 240 can be accomplished by other methods and are not restricted herein.
For example,
In addition,
Based on the aforesaid descriptions, the invention does note specifically limit the pattern design of the shielding electrode layer. It can be adopted in the invention that the orthogonal projection of the shielding electrode layer on the display panel can be completely filled the space between the sensing electrodes, which facilitates desirable optical compensation effect. In addition, the orthogonal projection of the shielding electrode layer on the display panel can be slightly overlapped with the orthogonal projection of the sensing electrodes on the display panel, which further facilitates desirable optical compensation effect at an inclined viewing angle.
Several embodiments illustrating a cross-sectional design of the touch panel and the shielding electrode layer in the touch display apparatus 200 of
In the present embodiment, the insulation layer 226 is, for instance, consisted of a plurality of island-like insulation patterns and the insulation element 230 is a layer-like insulation element. The disposition location of the shielding electrode layer 240 is at least located between two sensing electrodes. In addition, the first connecting lines C1 and the second connecting lines C2 can be metal or transparent conductive material.
In summary, a patterned shielding electrode layer is disposed between the touch panel and the display panel according to the invention. In addition to provide a signal shielding effect and an ESD protection effect, the patterned shielding electrode layer further conduces to mitigate the uneven display quality of the touch display apparatus. Specifically, the shielding electrode layer and the sensing electrodes of the touch panel are made of the same material. The patterns of the shielding electrode layer are disposed in the space between the sensing electrodes according to the invention so that the display light emitted from the display panel can pass through one transparent conductive layer in different positions. Therefore, the touch display apparatus can have much even visual effect.
Although the invention has been described with reference to the above embodiments, it will be apparent to one of the ordinary skill in the art that modifications to the described embodiment may be made without departing from the spirit of the invention. Accordingly, the scope of the invention will be defined by the attached claims not by the above detailed descriptions.
Number | Date | Country | Kind |
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99138885 | Nov 2010 | TW | national |